Molecular Signaling Section, Laboratory of Bioorganic Chemistry, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892, USA.
Mouse Metabolism Core, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892, USA.
Cells. 2023 Jul 7;12(13):1801. doi: 10.3390/cells12131801.
Precise neural regulation is required for maintenance of energy homeostasis. Essential to this are the hypothalamic and brainstem nuclei which are located adjacent and supra-adjacent to the circumventricular organs. They comprise multiple distinct neuronal populations which receive inputs not only from other brain regions, but also from circulating signals such as hormones, nutrients, metabolites and postprandial signals. Hence, they are ideally placed to exert a multi-tier control over metabolism. The neuronal sub-populations present in these key metabolically relevant nuclei regulate various facets of energy balance which includes appetite/satiety control, substrate utilization by peripheral organs and glucose homeostasis. In situations of heightened energy demand or excess, they maintain energy homeostasis by restoring the balance between energy intake and expenditure. While research on the metabolic role of the central nervous system has progressed rapidly, the neural circuitry and molecular mechanisms involved in regulating distinct metabolic functions have only gained traction in the last few decades. The focus of this review is to provide an updated summary of the mechanisms by which the various neuronal subpopulations, mainly located in the hypothalamus and the brainstem, regulate key metabolic functions.
精确的神经调节对于维持能量平衡至关重要。下丘脑和脑干核位于脑血 管周围器官的相邻和上邻部位,对于这一过程至关重要。它们包含多个不同的神 经细胞群体,不仅接收来自其他脑区的输入,还接收循环信号,如激素、营养物、 代谢物和餐后信号。因此,它们是对代谢进行多层次控制的理想位置。存在于这些 关键代谢相关核中的神经元亚群调节能量平衡的各个方面,包括食欲/饱腹感控制、 外周器官的底物利用和葡萄糖稳态。在能量需求增加或过剩的情况下,它们通过恢 复能量摄入和消耗之间的平衡来维持能量平衡。虽然中枢神经系统代谢作用的研 究进展迅速,但调节不同代谢功能的神经回路和分子机制仅在过去几十年才受到关 注。本综述的重点是提供一个更新的综述,说明主要位于下丘脑和脑干的各种神 经元亚群调节关键代谢功能的机制。